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Yarrowia lipolytica is widely studied as a non-conventional model yeast owing to the high level of lipid accumulation.
The validation and refinement of GEMs for a model yeast Scheffersomyces stipitis is used as the case study to demonstrate the effectiveness of the SID framework.
While the model yeast Saccharomyces cerevisiae is an excellent host for the conversion of glucose to ethanol, production of other chemicals from alternative substrates often requires extensive strain engineering.
In this study, we characterized extracellular vesicles produced by the model yeast S. cerevisiae.
The importance of Hsp60 as a chaperone in fungi has been extensively studied in the model yeast Sacharomyces cereviseae [18], [19], [20], [21].
Our results share similarities with the findings of studies investigating interactions among chaperones and other proteins in the model yeast S. cereviseae [62], [63], [64].
We characterized extracellular vesicle production in wild type (WT) and mutant strains of the model yeast Saccharomyces cerevisiae using transmission electron microscopy in combination with light scattering analysis, lipid extraction and proteomics.
Model yeast when grown aerobically uses glucose via glycolysis and is referred to as Crabtree-positive.
In the caretaker model, yeast Sae2 represents an expansion promoting protein (Fig. 2B).
Many of these industrial processes rely heavily on the model yeast Saccharomyces cerevisiae.
These identified compounds were tested for their effects on the growth of the model yeast, Saccharomyces.
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